通过对敲除小鼠血管缺陷的系统分析确定的对血管发生至关重要的基因。

W Scott Argraves, Christopher J Drake
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引用次数: 57

摘要

为了确定对血管发生过程重要的基因,我们使用一种新的荟萃分析方法评估了100只小鼠基因敲除研究中的胚胎血管异常。通过应用这种称为胚胎血管异常排序法(AREVA)的方法,根据特定胚胎区域血管形成期间血管缺陷的发生情况,计算每个基因敲除的等级分数。结果,12个基因(纤维连接蛋白、VEGFR-1/Flt-1、VEGFR-2/Flk-1、α 5整合素、Tek/Tie2、VE-cadherin、VEGFA、连接蛋白45、ShcA、细胞色素P450还原酶、CD148/DEP-1和EphrinB2)被确定在血管发生中发挥关键作用。这些基因的功能分类揭示了VEGF信号传导的基本重要性,因为12个基因中有10个(纤维连接蛋白、VEGFR-1/Flt-1、VEGFR-2/Flk-1、α 5整合素、VE-cadherin、VEGFA、ShcA、细胞色素P450还原酶、CD148/DEP-1和EphrinB2)与这一途径有关。此外,研究结果强调了通过ShcA/Ras/Raf/Mek/Erk级联调节VEGF信号通路的潜在网络,涉及纤维连接蛋白、EphrinB2、Tie2和connexin 45信号通路的整合。除了本文所述的回顾性应用AREVA外,AREVA还可用于前瞻性地确定新失活基因与血管发生的相关性。
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Genes critical to vasculogenesis as defined by systematic analysis of vascular defects in knockout mice.

To identify genes important to the process of vasculogenesis, we evaluated embryonic vascular anomalies from 100 mouse knockout studies using a novel meta-analysis approach. By applying this method, termed approach for ranking of embryonic vascular anomalies (AREVA), rank scores were calculated for each knockout based on the occurrence of vascular defects during periods of vasculogenesis in specific embryonic regions. As a result, 12 genes (fibronectin, VEGFR-1/Flt-1, VEGFR-2/Flk-1, alpha 5 integrin, Tek/Tie2, VE-cadherin, VEGFA, connexin 45, ShcA, cytochrome P450 reductase, CD148/DEP-1, and EphrinB2) were determined to play critical roles in vasculogenesis. Functional categorization of these genes revealed the fundamental importance of VEGF signaling since 10 of the 12 genes (fibronectin, VEGFR-1/Flt-1, VEGFR-2/Flk-1, alpha 5 integrin, VE-cadherin, VEGFA, ShcA, cytochrome P450 reductase, CD148/DEP-1, and EphrinB2) relate to this pathway. Furthermore, the findings highlight a potential network for regulating VEGF signaling involving integration of fibronectin, EphrinB2, Tie2, and connexin 45 signaling pathways via the ShcA/Ras/Raf/Mek/Erk cascade. In addition to retrospective application of AREVA as done herein, AREVA can be used prospectively to determine the relevancy to vasculogenesis of newly inactivated genes.

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